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Single-shot realization of nonadiabatic holonomic gates with a superconducting Xmon qutrit

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arxiv 1811.06252 v1 pith:LTLINWZH submitted 2018-11-15 quant-ph

Single-shot realization of nonadiabatic holonomic gates with a superconducting Xmon qutrit

classification quant-ph
keywords gatesholonomicnonadiabaticsingle-shotprotocolone-qubitqutritrealize
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Nonadiabatic holonomic quantum computation has received increasing attention due to its robustness against control errors as well as high-speed realization. The original protocol of nonadiabatic holonomic one-qubit gates has been experimentally demonstrated with superconducting transmon qutrit. However, the original protocol requires two noncommuting gates to realize an arbitrary one-qubit gate, which doubles the exposure time of gates to error sources and therefore makes the gates vulnerable to environment-induced decoherence. Single-shot protocol was subsequently proposed to realize an arbitrary one-qubit nonadiabatic holonomic gate. In this paper, we experimentally realize the single-shot protocol of nonadiabatic holonomic single qubit gates with a superconducting Xmon qutrit, where all the Clifford element gates are realized by a single-shot implementation. Characterized by quantum process tomography and randomized benchmarking, the single-shot gates reach a fidelity larger than 99%.

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